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Corrosion Development of Carbon Steel Grids and Shear Connectors in Cracked Composite Beams Exposed to Wet–Dry Cycles in Chloride Environment

机译:碳钢格栅和剪切连接器在氯化物环境中暴露于干湿循环的复合裂纹中的腐蚀发展

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摘要

The corrosion development of the reinforcement and shear stud connectors in the cracked steel–concrete composite beams under the salt-fog wet–dry cycles is presented in this investigation. Seven identical composite beams with load-induced concrete cracks were exposed to an aggressive chloride environment. The reinforcement and shear connectors were retrieved after specimens underwent a specified number of wet–dry cycles to obtain the corrosion pattern and the cross-section loss at different exposure times and their evolutions. The crack map, the corrosion pattern and the cross-section loss were measured and presented. Based on the experimental results, the influence of crack characteristics, including crack widths, orientations and positions on the corrosion rate and distribution, were accessed. Moreover, the effects of the connecting weldments on the corrosion initiations and patterns were analyzed. It was shown that the corrosion rate would increase with the number of wet–dry cycles. The characteristics of load-induced cracks could have different influences on the steel grids and shear stud connectors. The corrosion tended to initiate from the connecting weldments, due to the potential difference with the parent steel and the aggressive exposure environment, leading to a preferential weldment attack.
机译:在这项研究中,研究了盐雾湿循环下钢筋混凝土组合梁中钢筋和剪力螺柱连接器的腐蚀情况。七个相同的带有荷载引起的混凝土裂缝的复合梁被暴露在侵蚀性的氯化物环境中。在对样品进行指定数量的干湿循环后,取回了钢筋和剪切连接器,以获得在不同的暴露时间及其演变过程中的腐蚀模式和横截面损失。测量并给出了裂纹图,腐蚀方式和截面损失。根据实验结果,了解了裂纹特征(包括裂纹宽度,方向和位置)对腐蚀速率和分布的影响。此外,分析了连接焊件对腐蚀起因和腐蚀方式的影响。结果表明,腐蚀速率会随着干湿循环次数的增加而增加。荷载引起的裂纹的特性可能会对钢格架和抗剪栓钉连接器产生不同的影响。由于与母钢的电位差和侵蚀性暴露环境,腐蚀趋于从连接焊件开始,从而导致优先的焊件腐蚀。

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